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ETAP Network Project Management (NetPM™) provides a platform for collaborative engineering using smart management tools to shorten the time for power system modeling and studies from months to weeks.
ETAP NetPM™ offers a powerful time-saving solution for topology synchronization, data integration, model coordination & validation, and information transfer across the entire life cycle of the electrical network from modeling to operation and from engineering-consultants to owner-operators.
Quickly identify changes from multiple engineers made to a project and synchronize the changes. NetPM provides a platform for improved design validation through collaboration.
Increase productivity by having multiple engineers working in parallel on the same project. NetPM removes the time delay associated with the traditional sequential process of single engineer project access by allowing multiple engineers to simultaneously work on the same model and run various studies.
With tools for a complete multi-user management system, efficiency of project completion will drastically increase. Whether data collection and project updates are done from etapAPP™ or from an engineering workstation, all changes are simultaneously reflected on the master model and approved updates are broadcasted to selected users.
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This presentation discusses the Electrical Information Management System (EIMS) in use at Kuwait Oil Company, a power reservation model-based integration solution designed for oil and gas production. The aim was to achieve flexible and configurable approval workflows, integrated with user access management and various notification methods, to optimize operation, enhance visualization, and improve asset management within their complex electrical networks. Their EIMS integrates smart meters with ETAP and GIS, enabling efficient communication, real-time updates, and enhanced reliability of the electrical system. The pilot project includes real-time power monitoring, reduced site visits, expedited workflow, and centralized management of work order processes. The presentation also covers the challenges faced in power reservation planning and the specific ETAP solutions implemented, including NetPM and ETAP eWeb.
This presentation explores the critical role of ETAP's Network Project Manager (NETPM) in creating collaborative models for power systems. It addresses the industry-wide challenge of maintaining accurate, up-to-date electrical system data, highlighting the risks associated with outdated or inaccessible information. Carter Sanders introduces NETPM as a solution, demonstrating how it facilitates the creation of "living models" that evolve with the system. Key topics include the implementation of NETPM, focusing on user roles, permissions, and effective workflows. A customer success story illustrates the tangible benefits of NETPM, including reduced man-hours, faster information transfer, and improved risk mitigation. The presentation also covers important considerations for model management, data access, and adapting service models to incorporate NETPM effectively. By emphasizing the shift from static diagrams to dynamic, collaborative models, this talk aims to showcase how NETPM can enhance safety, reliability, and efficiency in power system management. It concludes by encouraging audiences to explore NETPM's potential in their operations, positioning it as a crucial tool for navigating the complexities of modern electrical systems.
Learn how to shorten the time for power system modeling and studies from months to weeks, utilizing ETAP Network Project Management (NetPM™), a platform for collaborative engineering.
This webinar introduces ETAP NetPM™ and demonstrates how this powerful time-saving solution for topology synchronization, data integration, model coordination & validation, and information transfer benefits users across the entire life cycle of the electrical network from modeling to operation and from engineering-consultants to owner-operators.
This webinar covers the most important features & capabilities that allow quick and efficient power system analysis studies
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